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Heterotrophic nitrification among denitrifiers.

机译:反硝化器之间的异养硝化作用。

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Twelve denitrifying bacteria representing six genera were tested for an ability to nitrify pyruvic oxime heterotrophically. Six of these bacteria exhibited appreciable nitrification activity, yielding as much as 5.8 mM nitrite and little or no nitrate when grown in a mineral salts medium containing 7 mM pyruvic oxime and 0.05% yeast extract. Of the six active bacteria, four (Pseudomonas denitrificans, Pseudomonas aeruginosa, and two strains of Pseudomonas fluorescens) could grow on yeast extract but not pyruvic oxime, one (Pseudomonas aureofaciens) could grow slowly on pyruvic oxime, and one (Alcaligenes faecalis) could apparently grow on pyruvic oxime in the presence of yeast extract but not in its absence. Eight of the twelve bacteria in the resting state could oxidize hydroxylamine to nitrite, and P. aureofaciens was remarkably active in this regard. In general, those denitrifiers active in the nitrification of pyruvic oxime or hydroxylamine or both are abundant in soils. A possible advantage of having nitrification and denitrification capabilities in the same organism is discussed.
机译:测试了代表六个属的十二个反硝化细菌异养硝化丙酮酸肟的能力。这些细菌中的六个细菌表现出明显的硝化活性,当在含有7 mM丙酮酸肟和0.05%酵母提取物的矿物盐培养基中生长时,产生高达5.8 mM的亚硝酸盐而几乎没有硝酸盐。在这六种活性细菌中,四种(反硝化假单胞菌,铜绿假单胞菌和两种荧光假单胞菌)可以在酵母提取物中生长,但不能在丙酮酸肟上生长,一种(Pseudomonas aureofaciens)可以在丙酮酸肟上缓慢生长,而另一种(Alcaligenes faecalis)可以生长。在酵母提取物存在下,丙酮酸肟显然生长,但在没有酵母提取物时,丙酮酸肟不能生长。处于静止状态的十二种细菌中有八种可以将羟胺氧化为亚硝酸盐,而金黄色葡萄球菌在这方面具有显着的活性。通常,在丙酮酸肟或羟胺或两者的硝化中具有活性的那些反硝化剂在土壤中丰富。讨论了在同一生物中具有硝化和反硝化能力的可能优势。

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